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源自甘油二酯或氨基酸的HIV蛋白酶抑制剂(沙奎那韦、茚地那韦和奈非那韦)的前药:合成、稳定性及抗HIV活性

Prodrugs of HIV protease inhibitors-saquinavir, indinavir and nelfinavir-derived from diglycerides or amino acids: synthesis, stability and anti-HIV activity.

作者信息

Gaucher Bérangère, Rouquayrol Marielle, Roche Dominique, Greiner Jacques, Aubertin Anne-Marie, Vierling Pierre

机构信息

Laboratoire de Chimie Bioorganique, UMR 6001 CNRS, Université de Nice Sophia-Antipolis, Parc Valrose, 06108 Nice Cédex 2, France.

出版信息

Org Biomol Chem. 2004 Feb 7;2(3):345-57. doi: 10.1039/b313119j. Epub 2004 Jan 5.

Abstract

With the aim of improving the pharmacological properties of current protease inhibitors (PIs), the synthesis of various acyl and carbamate amino acid- or diglyceride-containing prodrugs derived from saquinavir, indinavir and nelfinavir, their in vitro stability with respect to hydrolysis and their anti-HIV activity in CEM-SS and MT4 cells have been investigated. l-Leucine (Leu) and l-phenylalanine (Phe) were connected through their carboxyl to the PIs while l-tyrosine (Tyr) was conjugated through its aromatic hydroxyl via various spacer units. Hydrolysis of the prodrug with liberation of the active free drug was crucial for antiviral activity. The Leu- and Phe-PI prodrugs released the active free drug very rapidly (half-lives of hydrolysis in buffer at 37 degree C of 3-4 h). The Tyr-PI conjugates with a -C(O)(CH(2))(4)- linker exhibited half-lives in the 40-70 h range and antiviral activities in the 21-325 nM range (from 2 to 22 nM for the free PIs). The chemically very stable carbamate "peptidomimetic" Tyr-PI prodrugs (no hydrolysis detected after 7 days in buffer) displayed a very low anti-HIV activity or were even inactive (EC(50) from 2300 nM to >10 microM). A very low antiviral activity was measured for the diglyceride-substituted saquinavir and for all of the disubstituted indinavir and nelfinavir prodrugs. All these prodrugs probably released the active parent PI too slowly under the antiviral assay conditions. These results combined with those from transepithelial transport studies (Rouquayrol et al., Pharm. Res., 2002, 19, 1704-1712) indicate that conjugation of amino acids (through their carboxyl) to the PIs constitutes a most appealing alternative which could improve the intestinal absorption of the PIs and reduce their recognition by efflux carriers.

摘要

为了改善现有蛋白酶抑制剂(PIs)的药理性质,人们研究了源自沙奎那韦、茚地那韦和奈非那韦的各种含酰基和氨基甲酸酯氨基酸或甘油二酯的前药的合成、它们在体外的水解稳定性以及它们在CEM-SS和MT4细胞中的抗HIV活性。L-亮氨酸(Leu)和L-苯丙氨酸(Phe)通过它们的羧基与PIs相连,而L-酪氨酸(Tyr)则通过其芳香羟基经由各种间隔单元进行缀合。前药水解并释放出活性游离药物对于抗病毒活性至关重要。Leu-PI和Phe-PI前药非常迅速地释放出活性游离药物(在37℃缓冲液中的水解半衰期为3 - 4小时)。带有-C(O)(CH(2))(4)-连接基的Tyr-PI缀合物的半衰期在40 - 70小时范围内,抗病毒活性在21 - 325 nM范围内(游离PIs为2至22 nM)。化学性质非常稳定的氨基甲酸酯“肽模拟物”Tyr-PI前药(在缓冲液中7天后未检测到水解)显示出非常低的抗HIV活性或甚至无活性(EC(50)为2300 nM至>10 microM)。对于甘油二酯取代的沙奎那韦以及所有二取代的茚地那韦和奈非那韦前药,测得的抗病毒活性非常低。所有这些前药在抗病毒测定条件下可能释放活性母体PI的速度太慢。这些结果与跨上皮转运研究(Rouquayrol等人,《药物研究》,2002年,19卷,1704 - 1712页)的结果相结合表明,将氨基酸(通过它们的羧基)与PIs缀合构成了一种极具吸引力的替代方法,它可以改善PIs的肠道吸收并减少它们被外排载体识别。

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